des-internal.c 15 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499
  1. /*
  2. * DES and 3DES-EDE ciphers
  3. *
  4. * Modifications to LibTomCrypt implementation:
  5. * Copyright (c) 2006-2009, Jouni Malinen <j@w1.fi>
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License version 2 as
  9. * published by the Free Software Foundation.
  10. *
  11. * Alternatively, this software may be distributed under the terms of BSD
  12. * license.
  13. *
  14. * See README and COPYING for more details.
  15. */
  16. #include "includes.h"
  17. #include "common.h"
  18. #include "crypto.h"
  19. #include "des_i.h"
  20. /*
  21. * This implementation is based on a DES implementation included in
  22. * LibTomCrypt. The version here is modified to fit in wpa_supplicant/hostapd
  23. * coding style.
  24. */
  25. /* LibTomCrypt, modular cryptographic library -- Tom St Denis
  26. *
  27. * LibTomCrypt is a library that provides various cryptographic
  28. * algorithms in a highly modular and flexible manner.
  29. *
  30. * The library is free for all purposes without any express
  31. * guarantee it works.
  32. *
  33. * Tom St Denis, tomstdenis@gmail.com, http://libtomcrypt.com
  34. */
  35. /**
  36. DES code submitted by Dobes Vandermeer
  37. */
  38. #define ROLc(x, y) \
  39. ((((unsigned long) (x) << (unsigned long) ((y) & 31)) | \
  40. (((unsigned long) (x) & 0xFFFFFFFFUL) >> \
  41. (unsigned long) (32 - ((y) & 31)))) & 0xFFFFFFFFUL)
  42. #define RORc(x, y) \
  43. (((((unsigned long) (x) & 0xFFFFFFFFUL) >> \
  44. (unsigned long) ((y) & 31)) | \
  45. ((unsigned long) (x) << (unsigned long) (32 - ((y) & 31)))) & \
  46. 0xFFFFFFFFUL)
  47. static const u32 bytebit[8] =
  48. {
  49. 0200, 0100, 040, 020, 010, 04, 02, 01
  50. };
  51. static const u32 bigbyte[24] =
  52. {
  53. 0x800000UL, 0x400000UL, 0x200000UL, 0x100000UL,
  54. 0x80000UL, 0x40000UL, 0x20000UL, 0x10000UL,
  55. 0x8000UL, 0x4000UL, 0x2000UL, 0x1000UL,
  56. 0x800UL, 0x400UL, 0x200UL, 0x100UL,
  57. 0x80UL, 0x40UL, 0x20UL, 0x10UL,
  58. 0x8UL, 0x4UL, 0x2UL, 0x1L
  59. };
  60. /* Use the key schedule specific in the standard (ANSI X3.92-1981) */
  61. static const u8 pc1[56] = {
  62. 56, 48, 40, 32, 24, 16, 8, 0, 57, 49, 41, 33, 25, 17,
  63. 9, 1, 58, 50, 42, 34, 26, 18, 10, 2, 59, 51, 43, 35,
  64. 62, 54, 46, 38, 30, 22, 14, 6, 61, 53, 45, 37, 29, 21,
  65. 13, 5, 60, 52, 44, 36, 28, 20, 12, 4, 27, 19, 11, 3
  66. };
  67. static const u8 totrot[16] = {
  68. 1, 2, 4, 6,
  69. 8, 10, 12, 14,
  70. 15, 17, 19, 21,
  71. 23, 25, 27, 28
  72. };
  73. static const u8 pc2[48] = {
  74. 13, 16, 10, 23, 0, 4, 2, 27, 14, 5, 20, 9,
  75. 22, 18, 11, 3, 25, 7, 15, 6, 26, 19, 12, 1,
  76. 40, 51, 30, 36, 46, 54, 29, 39, 50, 44, 32, 47,
  77. 43, 48, 38, 55, 33, 52, 45, 41, 49, 35, 28, 31
  78. };
  79. static const u32 SP1[64] =
  80. {
  81. 0x01010400UL, 0x00000000UL, 0x00010000UL, 0x01010404UL,
  82. 0x01010004UL, 0x00010404UL, 0x00000004UL, 0x00010000UL,
  83. 0x00000400UL, 0x01010400UL, 0x01010404UL, 0x00000400UL,
  84. 0x01000404UL, 0x01010004UL, 0x01000000UL, 0x00000004UL,
  85. 0x00000404UL, 0x01000400UL, 0x01000400UL, 0x00010400UL,
  86. 0x00010400UL, 0x01010000UL, 0x01010000UL, 0x01000404UL,
  87. 0x00010004UL, 0x01000004UL, 0x01000004UL, 0x00010004UL,
  88. 0x00000000UL, 0x00000404UL, 0x00010404UL, 0x01000000UL,
  89. 0x00010000UL, 0x01010404UL, 0x00000004UL, 0x01010000UL,
  90. 0x01010400UL, 0x01000000UL, 0x01000000UL, 0x00000400UL,
  91. 0x01010004UL, 0x00010000UL, 0x00010400UL, 0x01000004UL,
  92. 0x00000400UL, 0x00000004UL, 0x01000404UL, 0x00010404UL,
  93. 0x01010404UL, 0x00010004UL, 0x01010000UL, 0x01000404UL,
  94. 0x01000004UL, 0x00000404UL, 0x00010404UL, 0x01010400UL,
  95. 0x00000404UL, 0x01000400UL, 0x01000400UL, 0x00000000UL,
  96. 0x00010004UL, 0x00010400UL, 0x00000000UL, 0x01010004UL
  97. };
  98. static const u32 SP2[64] =
  99. {
  100. 0x80108020UL, 0x80008000UL, 0x00008000UL, 0x00108020UL,
  101. 0x00100000UL, 0x00000020UL, 0x80100020UL, 0x80008020UL,
  102. 0x80000020UL, 0x80108020UL, 0x80108000UL, 0x80000000UL,
  103. 0x80008000UL, 0x00100000UL, 0x00000020UL, 0x80100020UL,
  104. 0x00108000UL, 0x00100020UL, 0x80008020UL, 0x00000000UL,
  105. 0x80000000UL, 0x00008000UL, 0x00108020UL, 0x80100000UL,
  106. 0x00100020UL, 0x80000020UL, 0x00000000UL, 0x00108000UL,
  107. 0x00008020UL, 0x80108000UL, 0x80100000UL, 0x00008020UL,
  108. 0x00000000UL, 0x00108020UL, 0x80100020UL, 0x00100000UL,
  109. 0x80008020UL, 0x80100000UL, 0x80108000UL, 0x00008000UL,
  110. 0x80100000UL, 0x80008000UL, 0x00000020UL, 0x80108020UL,
  111. 0x00108020UL, 0x00000020UL, 0x00008000UL, 0x80000000UL,
  112. 0x00008020UL, 0x80108000UL, 0x00100000UL, 0x80000020UL,
  113. 0x00100020UL, 0x80008020UL, 0x80000020UL, 0x00100020UL,
  114. 0x00108000UL, 0x00000000UL, 0x80008000UL, 0x00008020UL,
  115. 0x80000000UL, 0x80100020UL, 0x80108020UL, 0x00108000UL
  116. };
  117. static const u32 SP3[64] =
  118. {
  119. 0x00000208UL, 0x08020200UL, 0x00000000UL, 0x08020008UL,
  120. 0x08000200UL, 0x00000000UL, 0x00020208UL, 0x08000200UL,
  121. 0x00020008UL, 0x08000008UL, 0x08000008UL, 0x00020000UL,
  122. 0x08020208UL, 0x00020008UL, 0x08020000UL, 0x00000208UL,
  123. 0x08000000UL, 0x00000008UL, 0x08020200UL, 0x00000200UL,
  124. 0x00020200UL, 0x08020000UL, 0x08020008UL, 0x00020208UL,
  125. 0x08000208UL, 0x00020200UL, 0x00020000UL, 0x08000208UL,
  126. 0x00000008UL, 0x08020208UL, 0x00000200UL, 0x08000000UL,
  127. 0x08020200UL, 0x08000000UL, 0x00020008UL, 0x00000208UL,
  128. 0x00020000UL, 0x08020200UL, 0x08000200UL, 0x00000000UL,
  129. 0x00000200UL, 0x00020008UL, 0x08020208UL, 0x08000200UL,
  130. 0x08000008UL, 0x00000200UL, 0x00000000UL, 0x08020008UL,
  131. 0x08000208UL, 0x00020000UL, 0x08000000UL, 0x08020208UL,
  132. 0x00000008UL, 0x00020208UL, 0x00020200UL, 0x08000008UL,
  133. 0x08020000UL, 0x08000208UL, 0x00000208UL, 0x08020000UL,
  134. 0x00020208UL, 0x00000008UL, 0x08020008UL, 0x00020200UL
  135. };
  136. static const u32 SP4[64] =
  137. {
  138. 0x00802001UL, 0x00002081UL, 0x00002081UL, 0x00000080UL,
  139. 0x00802080UL, 0x00800081UL, 0x00800001UL, 0x00002001UL,
  140. 0x00000000UL, 0x00802000UL, 0x00802000UL, 0x00802081UL,
  141. 0x00000081UL, 0x00000000UL, 0x00800080UL, 0x00800001UL,
  142. 0x00000001UL, 0x00002000UL, 0x00800000UL, 0x00802001UL,
  143. 0x00000080UL, 0x00800000UL, 0x00002001UL, 0x00002080UL,
  144. 0x00800081UL, 0x00000001UL, 0x00002080UL, 0x00800080UL,
  145. 0x00002000UL, 0x00802080UL, 0x00802081UL, 0x00000081UL,
  146. 0x00800080UL, 0x00800001UL, 0x00802000UL, 0x00802081UL,
  147. 0x00000081UL, 0x00000000UL, 0x00000000UL, 0x00802000UL,
  148. 0x00002080UL, 0x00800080UL, 0x00800081UL, 0x00000001UL,
  149. 0x00802001UL, 0x00002081UL, 0x00002081UL, 0x00000080UL,
  150. 0x00802081UL, 0x00000081UL, 0x00000001UL, 0x00002000UL,
  151. 0x00800001UL, 0x00002001UL, 0x00802080UL, 0x00800081UL,
  152. 0x00002001UL, 0x00002080UL, 0x00800000UL, 0x00802001UL,
  153. 0x00000080UL, 0x00800000UL, 0x00002000UL, 0x00802080UL
  154. };
  155. static const u32 SP5[64] =
  156. {
  157. 0x00000100UL, 0x02080100UL, 0x02080000UL, 0x42000100UL,
  158. 0x00080000UL, 0x00000100UL, 0x40000000UL, 0x02080000UL,
  159. 0x40080100UL, 0x00080000UL, 0x02000100UL, 0x40080100UL,
  160. 0x42000100UL, 0x42080000UL, 0x00080100UL, 0x40000000UL,
  161. 0x02000000UL, 0x40080000UL, 0x40080000UL, 0x00000000UL,
  162. 0x40000100UL, 0x42080100UL, 0x42080100UL, 0x02000100UL,
  163. 0x42080000UL, 0x40000100UL, 0x00000000UL, 0x42000000UL,
  164. 0x02080100UL, 0x02000000UL, 0x42000000UL, 0x00080100UL,
  165. 0x00080000UL, 0x42000100UL, 0x00000100UL, 0x02000000UL,
  166. 0x40000000UL, 0x02080000UL, 0x42000100UL, 0x40080100UL,
  167. 0x02000100UL, 0x40000000UL, 0x42080000UL, 0x02080100UL,
  168. 0x40080100UL, 0x00000100UL, 0x02000000UL, 0x42080000UL,
  169. 0x42080100UL, 0x00080100UL, 0x42000000UL, 0x42080100UL,
  170. 0x02080000UL, 0x00000000UL, 0x40080000UL, 0x42000000UL,
  171. 0x00080100UL, 0x02000100UL, 0x40000100UL, 0x00080000UL,
  172. 0x00000000UL, 0x40080000UL, 0x02080100UL, 0x40000100UL
  173. };
  174. static const u32 SP6[64] =
  175. {
  176. 0x20000010UL, 0x20400000UL, 0x00004000UL, 0x20404010UL,
  177. 0x20400000UL, 0x00000010UL, 0x20404010UL, 0x00400000UL,
  178. 0x20004000UL, 0x00404010UL, 0x00400000UL, 0x20000010UL,
  179. 0x00400010UL, 0x20004000UL, 0x20000000UL, 0x00004010UL,
  180. 0x00000000UL, 0x00400010UL, 0x20004010UL, 0x00004000UL,
  181. 0x00404000UL, 0x20004010UL, 0x00000010UL, 0x20400010UL,
  182. 0x20400010UL, 0x00000000UL, 0x00404010UL, 0x20404000UL,
  183. 0x00004010UL, 0x00404000UL, 0x20404000UL, 0x20000000UL,
  184. 0x20004000UL, 0x00000010UL, 0x20400010UL, 0x00404000UL,
  185. 0x20404010UL, 0x00400000UL, 0x00004010UL, 0x20000010UL,
  186. 0x00400000UL, 0x20004000UL, 0x20000000UL, 0x00004010UL,
  187. 0x20000010UL, 0x20404010UL, 0x00404000UL, 0x20400000UL,
  188. 0x00404010UL, 0x20404000UL, 0x00000000UL, 0x20400010UL,
  189. 0x00000010UL, 0x00004000UL, 0x20400000UL, 0x00404010UL,
  190. 0x00004000UL, 0x00400010UL, 0x20004010UL, 0x00000000UL,
  191. 0x20404000UL, 0x20000000UL, 0x00400010UL, 0x20004010UL
  192. };
  193. static const u32 SP7[64] =
  194. {
  195. 0x00200000UL, 0x04200002UL, 0x04000802UL, 0x00000000UL,
  196. 0x00000800UL, 0x04000802UL, 0x00200802UL, 0x04200800UL,
  197. 0x04200802UL, 0x00200000UL, 0x00000000UL, 0x04000002UL,
  198. 0x00000002UL, 0x04000000UL, 0x04200002UL, 0x00000802UL,
  199. 0x04000800UL, 0x00200802UL, 0x00200002UL, 0x04000800UL,
  200. 0x04000002UL, 0x04200000UL, 0x04200800UL, 0x00200002UL,
  201. 0x04200000UL, 0x00000800UL, 0x00000802UL, 0x04200802UL,
  202. 0x00200800UL, 0x00000002UL, 0x04000000UL, 0x00200800UL,
  203. 0x04000000UL, 0x00200800UL, 0x00200000UL, 0x04000802UL,
  204. 0x04000802UL, 0x04200002UL, 0x04200002UL, 0x00000002UL,
  205. 0x00200002UL, 0x04000000UL, 0x04000800UL, 0x00200000UL,
  206. 0x04200800UL, 0x00000802UL, 0x00200802UL, 0x04200800UL,
  207. 0x00000802UL, 0x04000002UL, 0x04200802UL, 0x04200000UL,
  208. 0x00200800UL, 0x00000000UL, 0x00000002UL, 0x04200802UL,
  209. 0x00000000UL, 0x00200802UL, 0x04200000UL, 0x00000800UL,
  210. 0x04000002UL, 0x04000800UL, 0x00000800UL, 0x00200002UL
  211. };
  212. static const u32 SP8[64] =
  213. {
  214. 0x10001040UL, 0x00001000UL, 0x00040000UL, 0x10041040UL,
  215. 0x10000000UL, 0x10001040UL, 0x00000040UL, 0x10000000UL,
  216. 0x00040040UL, 0x10040000UL, 0x10041040UL, 0x00041000UL,
  217. 0x10041000UL, 0x00041040UL, 0x00001000UL, 0x00000040UL,
  218. 0x10040000UL, 0x10000040UL, 0x10001000UL, 0x00001040UL,
  219. 0x00041000UL, 0x00040040UL, 0x10040040UL, 0x10041000UL,
  220. 0x00001040UL, 0x00000000UL, 0x00000000UL, 0x10040040UL,
  221. 0x10000040UL, 0x10001000UL, 0x00041040UL, 0x00040000UL,
  222. 0x00041040UL, 0x00040000UL, 0x10041000UL, 0x00001000UL,
  223. 0x00000040UL, 0x10040040UL, 0x00001000UL, 0x00041040UL,
  224. 0x10001000UL, 0x00000040UL, 0x10000040UL, 0x10040000UL,
  225. 0x10040040UL, 0x10000000UL, 0x00040000UL, 0x10001040UL,
  226. 0x00000000UL, 0x10041040UL, 0x00040040UL, 0x10000040UL,
  227. 0x10040000UL, 0x10001000UL, 0x10001040UL, 0x00000000UL,
  228. 0x10041040UL, 0x00041000UL, 0x00041000UL, 0x00001040UL,
  229. 0x00001040UL, 0x00040040UL, 0x10000000UL, 0x10041000UL
  230. };
  231. static void cookey(const u32 *raw1, u32 *keyout)
  232. {
  233. u32 *cook;
  234. const u32 *raw0;
  235. u32 dough[32];
  236. int i;
  237. cook = dough;
  238. for (i = 0; i < 16; i++, raw1++) {
  239. raw0 = raw1++;
  240. *cook = (*raw0 & 0x00fc0000L) << 6;
  241. *cook |= (*raw0 & 0x00000fc0L) << 10;
  242. *cook |= (*raw1 & 0x00fc0000L) >> 10;
  243. *cook++ |= (*raw1 & 0x00000fc0L) >> 6;
  244. *cook = (*raw0 & 0x0003f000L) << 12;
  245. *cook |= (*raw0 & 0x0000003fL) << 16;
  246. *cook |= (*raw1 & 0x0003f000L) >> 4;
  247. *cook++ |= (*raw1 & 0x0000003fL);
  248. }
  249. os_memcpy(keyout, dough, sizeof(dough));
  250. }
  251. static void deskey(const u8 *key, int decrypt, u32 *keyout)
  252. {
  253. u32 i, j, l, m, n, kn[32];
  254. u8 pc1m[56], pcr[56];
  255. for (j = 0; j < 56; j++) {
  256. l = (u32) pc1[j];
  257. m = l & 7;
  258. pc1m[j] = (u8)
  259. ((key[l >> 3U] & bytebit[m]) == bytebit[m] ? 1 : 0);
  260. }
  261. for (i = 0; i < 16; i++) {
  262. if (decrypt)
  263. m = (15 - i) << 1;
  264. else
  265. m = i << 1;
  266. n = m + 1;
  267. kn[m] = kn[n] = 0L;
  268. for (j = 0; j < 28; j++) {
  269. l = j + (u32) totrot[i];
  270. if (l < 28)
  271. pcr[j] = pc1m[l];
  272. else
  273. pcr[j] = pc1m[l - 28];
  274. }
  275. for (/* j = 28 */; j < 56; j++) {
  276. l = j + (u32) totrot[i];
  277. if (l < 56)
  278. pcr[j] = pc1m[l];
  279. else
  280. pcr[j] = pc1m[l - 28];
  281. }
  282. for (j = 0; j < 24; j++) {
  283. if ((int) pcr[(int) pc2[j]] != 0)
  284. kn[m] |= bigbyte[j];
  285. if ((int) pcr[(int) pc2[j + 24]] != 0)
  286. kn[n] |= bigbyte[j];
  287. }
  288. }
  289. cookey(kn, keyout);
  290. }
  291. static void desfunc(u32 *block, const u32 *keys)
  292. {
  293. u32 work, right, leftt;
  294. int cur_round;
  295. leftt = block[0];
  296. right = block[1];
  297. work = ((leftt >> 4) ^ right) & 0x0f0f0f0fL;
  298. right ^= work;
  299. leftt ^= (work << 4);
  300. work = ((leftt >> 16) ^ right) & 0x0000ffffL;
  301. right ^= work;
  302. leftt ^= (work << 16);
  303. work = ((right >> 2) ^ leftt) & 0x33333333L;
  304. leftt ^= work;
  305. right ^= (work << 2);
  306. work = ((right >> 8) ^ leftt) & 0x00ff00ffL;
  307. leftt ^= work;
  308. right ^= (work << 8);
  309. right = ROLc(right, 1);
  310. work = (leftt ^ right) & 0xaaaaaaaaL;
  311. leftt ^= work;
  312. right ^= work;
  313. leftt = ROLc(leftt, 1);
  314. for (cur_round = 0; cur_round < 8; cur_round++) {
  315. work = RORc(right, 4) ^ *keys++;
  316. leftt ^= SP7[work & 0x3fL]
  317. ^ SP5[(work >> 8) & 0x3fL]
  318. ^ SP3[(work >> 16) & 0x3fL]
  319. ^ SP1[(work >> 24) & 0x3fL];
  320. work = right ^ *keys++;
  321. leftt ^= SP8[ work & 0x3fL]
  322. ^ SP6[(work >> 8) & 0x3fL]
  323. ^ SP4[(work >> 16) & 0x3fL]
  324. ^ SP2[(work >> 24) & 0x3fL];
  325. work = RORc(leftt, 4) ^ *keys++;
  326. right ^= SP7[ work & 0x3fL]
  327. ^ SP5[(work >> 8) & 0x3fL]
  328. ^ SP3[(work >> 16) & 0x3fL]
  329. ^ SP1[(work >> 24) & 0x3fL];
  330. work = leftt ^ *keys++;
  331. right ^= SP8[ work & 0x3fL]
  332. ^ SP6[(work >> 8) & 0x3fL]
  333. ^ SP4[(work >> 16) & 0x3fL]
  334. ^ SP2[(work >> 24) & 0x3fL];
  335. }
  336. right = RORc(right, 1);
  337. work = (leftt ^ right) & 0xaaaaaaaaL;
  338. leftt ^= work;
  339. right ^= work;
  340. leftt = RORc(leftt, 1);
  341. work = ((leftt >> 8) ^ right) & 0x00ff00ffL;
  342. right ^= work;
  343. leftt ^= (work << 8);
  344. /* -- */
  345. work = ((leftt >> 2) ^ right) & 0x33333333L;
  346. right ^= work;
  347. leftt ^= (work << 2);
  348. work = ((right >> 16) ^ leftt) & 0x0000ffffL;
  349. leftt ^= work;
  350. right ^= (work << 16);
  351. work = ((right >> 4) ^ leftt) & 0x0f0f0f0fL;
  352. leftt ^= work;
  353. right ^= (work << 4);
  354. block[0] = right;
  355. block[1] = leftt;
  356. }
  357. /* wpa_supplicant/hostapd specific wrapper */
  358. void des_encrypt(const u8 *clear, const u8 *key, u8 *cypher)
  359. {
  360. u8 pkey[8], next, tmp;
  361. int i;
  362. u32 ek[32], work[2];
  363. /* Add parity bits to the key */
  364. next = 0;
  365. for (i = 0; i < 7; i++) {
  366. tmp = key[i];
  367. pkey[i] = (tmp >> i) | next | 1;
  368. next = tmp << (7 - i);
  369. }
  370. pkey[i] = next | 1;
  371. deskey(pkey, 0, ek);
  372. work[0] = WPA_GET_BE32(clear);
  373. work[1] = WPA_GET_BE32(clear + 4);
  374. desfunc(work, ek);
  375. WPA_PUT_BE32(cypher, work[0]);
  376. WPA_PUT_BE32(cypher + 4, work[1]);
  377. os_memset(pkey, 0, sizeof(pkey));
  378. os_memset(ek, 0, sizeof(ek));
  379. }
  380. void des_key_setup(const u8 *key, u32 *ek, u32 *dk)
  381. {
  382. deskey(key, 0, ek);
  383. deskey(key, 1, dk);
  384. }
  385. void des_block_encrypt(const u8 *plain, const u32 *ek, u8 *crypt)
  386. {
  387. u32 work[2];
  388. work[0] = WPA_GET_BE32(plain);
  389. work[1] = WPA_GET_BE32(plain + 4);
  390. desfunc(work, ek);
  391. WPA_PUT_BE32(crypt, work[0]);
  392. WPA_PUT_BE32(crypt + 4, work[1]);
  393. }
  394. void des_block_decrypt(const u8 *crypt, const u32 *dk, u8 *plain)
  395. {
  396. u32 work[2];
  397. work[0] = WPA_GET_BE32(crypt);
  398. work[1] = WPA_GET_BE32(crypt + 4);
  399. desfunc(work, dk);
  400. WPA_PUT_BE32(plain, work[0]);
  401. WPA_PUT_BE32(plain + 4, work[1]);
  402. }
  403. void des3_key_setup(const u8 *key, struct des3_key_s *dkey)
  404. {
  405. deskey(key, 0, dkey->ek[0]);
  406. deskey(key + 8, 1, dkey->ek[1]);
  407. deskey(key + 16, 0, dkey->ek[2]);
  408. deskey(key, 1, dkey->dk[2]);
  409. deskey(key + 8, 0, dkey->dk[1]);
  410. deskey(key + 16, 1, dkey->dk[0]);
  411. }
  412. void des3_encrypt(const u8 *plain, const struct des3_key_s *key, u8 *crypt)
  413. {
  414. u32 work[2];
  415. work[0] = WPA_GET_BE32(plain);
  416. work[1] = WPA_GET_BE32(plain + 4);
  417. desfunc(work, key->ek[0]);
  418. desfunc(work, key->ek[1]);
  419. desfunc(work, key->ek[2]);
  420. WPA_PUT_BE32(crypt, work[0]);
  421. WPA_PUT_BE32(crypt + 4, work[1]);
  422. }
  423. void des3_decrypt(const u8 *crypt, const struct des3_key_s *key, u8 *plain)
  424. {
  425. u32 work[2];
  426. work[0] = WPA_GET_BE32(crypt);
  427. work[1] = WPA_GET_BE32(crypt + 4);
  428. desfunc(work, key->dk[0]);
  429. desfunc(work, key->dk[1]);
  430. desfunc(work, key->dk[2]);
  431. WPA_PUT_BE32(plain, work[0]);
  432. WPA_PUT_BE32(plain + 4, work[1]);
  433. }